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Huanfang Liu, Chelsea D. Specht, Tong Zhao, and Jingping Liao

( Remashree et al., 1997 ). In addition, secretory structures were characterized, along with the histochemistry for 14 species of Zingiberaceae including Z. officinale ( Indriyani, 2017 ). This study reported that the rhizome of Zingiberaceae plants

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Fan Cao, Xinwang Wang, Zhuangzhuang Liu, Yongrong Li, and Fangren Peng

discontinuity is absent. According to the primary phloem fiber cell group structure from pecan stem crosscuts of the anatomic structure, it is known that phloem fiber cells have little effect on the inhibition of pecan adventitious root primordia formation, and

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Nancy Santana-Buzzy, Guadalupe López-Puc, Adriana Canto-Flick, Felipe Barredo-Pool, Eduardo Balam-Uc, Susana Avilés-Viñas, Daniela Solís-Marroquín, Carlos Lecona-Guzmán, Jericó Jabín Bello-Bello, Eunice Gómez-Uc, and Javier O. Mijangos-Cortés

to describe the events associated with direct somatic embryogenesis induced from the hypocotyl in C. chinense and to determine the structures and tissues of the explant involved in the development of the morphogenetic process through the monitoring

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Mingyue Bao, Minmin Liu, Qingxia Zhang, Tonglin Wang, Xia Sun, and Jinguang Xu

colors. We documented the anatomic structure of the petals and determined the cell sap pH value, water content, Ct, soluble sugar and soluble protein contents, and pigment content and composition. We also analyzed the indexes influencing flower color

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Dao-Jing Wang, Jing-Wen Zeng, Wen-Tao Ma, Min Lu, and Hua-Ming An

studies did not present clear and detailed anatomic structures or the distribution of trichomes, especially in different developmental stages of trichomes. Very little is known about the structure, ontogeny, and function of trichomes in R . roxburghii

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Lie Li, Yu-xin Tong, Jun-ling Lu, Yang-mei Li, and Qi-chang Yang

. ‘Tiberius’) grown in a PFAL, four treatments were used by combining the R and B with each monochromatic G, Y, O, and FR and using the combination of R and B as the control in this experiment. Lettuce growth and morphology, anatomical structure

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Melike Cirak and James R. Myers

others are isogenic at the pc locus, with those labeled “green” having the genotype pp pcpc and those labeled “white” as being pp PcPc . ‘Spartacus’ is pp pcpc and ‘Ulysses’ is pp PcPc . Seed testa anatomic structure. A micrograph

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Ze Li, Kai Shi, Fanhang Zhang, Lin Zhang, Hongxu Long, Yanling Zeng, Zhiming Liu, Genhua Niu, and Xiaofeng Tan

), CO 2 compensation point (CCP) and J max at a standard temperature of 25 °C were calculated with a model of the temperature dependence of the photosynthetic parameters. Leaf anatomic structure. Using optical microscopy and paraffin section technology

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Umit Serdar, Bulent Kose, and Fatma Yilmaz

We studied the anatomical structure of graft unions in European chestnut using several grafting methods. The work was done in the greenhouse during 2003–04. The grafting methods epicotyl, hypocotyl, and inverted radicle were used. The grafts were made with scions of clone SA 5-1 on clone SE 21-9 rootstock. The samples for examination were taken from the graft unions 2, 6, and 12 months after grafting, and fixed in a formalin–acetic acid–alcohol solution. The observation of the anatomical structure of the graft union area revealed that new cambium, xylem, and phloem tissues were formed in the samples two months after grafting. Further, it could be also observed that 6 months were necessary for continuous cambial connection.

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Michele R. Warmund, Rusty Fuller, and John H. Dunn

1 Associate professor. 2 Graduate student. 3 Professor. Missouri Agricultural Experiment Station journal series no. 12,683. We gratefully acknowledge Ray Evert for identifying anatomical structures on zoysiagrass mersitems. The cost of publishing