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表达AVP1的小麦植株中产量和光合产物分配的改善

Improved Yield and Photosynthate Partitioning in AVP1 Expressing Wheat () Plants.

作者信息

Regmi Kamesh C, Yogendra Kalenahalli, Farias Júlia Gomes, Li Lin, Kandel Raju, Yadav Umesh P, Sha Shengbo, Trittermann Christine, Short Laura, George Jessey, Evers John, Plett Darren, Ayre Brian G, Roy Stuart John, Gaxiola Roberto A

机构信息

School of Life Sciences, Arizona State University, Tempe, AZ, United States.

Australian Centre for Plant Functional Genomics, The University of Adelaide, Adelaide, SA, Australia.

出版信息

Front Plant Sci. 2020 Mar 17;11:273. doi: 10.3389/fpls.2020.00273. eCollection 2020.

Abstract

A fundamental factor to improve crop productivity involves the optimization of reduced carbon translocation from source to sink tissues. Here, we present data consistent with the positive effect that the expression of the H-PPase () has on reduced carbon partitioning and yield increases in wheat. Immunohistochemical localization of H-PPases (TaVP) in spring wheat Bobwhite L. revealed the presence of this conserved enzyme in wheat vasculature and sink tissues. Of note, immunogold imaging showed a plasma membrane localization of TaVP in sieve element- companion cell complexes of Bobwhite source leaves. These data together with the distribution patterns of a fluorescent tracer and [UC]-sucrose are consistent with an apoplasmic phloem-loading model in wheat. Interestingly, C-labeling experiments provided evidence for enhanced carbon partitioning between shoots and roots, and between flag leaves and milk stage kernels in AVP1 expressing Bobwhite lines. In keeping, there is a significant yield improvement triggered by the expression of in these lines. Green house and field grown transgenic wheat expressing also produced higher grain yield and number of seeds per plant, and exhibited an increase in root biomass when compared to null segregants. Another agriculturally desirable phenotype showed by AVP1 Bobwhite plants is a robust establishment of seedlings.

摘要

提高作物生产力的一个基本因素涉及优化从源组织到库组织的还原碳转运。在此,我们展示的数据表明,H-PPase()的表达对小麦中还原碳分配和产量增加具有积极作用。对春小麦博白L.中H-PPases(TaVP)进行免疫组织化学定位,结果显示这种保守酶存在于小麦的维管系统和库组织中。值得注意的是,免疫金成像显示TaVP定位于博白源叶筛管分子-伴胞复合体的质膜上。这些数据与荧光示踪剂和[UC]-蔗糖的分布模式一起,与小麦中的质外体韧皮部装载模型一致。有趣的是,C标记实验为表达AVP1的博白品系中地上部与根部之间以及旗叶与灌浆期籽粒之间碳分配增强提供了证据。与此一致的是,这些品系中因的表达引发了显著的产量提高。与空分离株相比,在温室和田间种植的表达的转基因小麦也产生了更高的籽粒产量和单株种子数,并且根生物量有所增加。AVP1博白植株表现出的另一个符合农业需求的表型是幼苗健壮。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4aa/7090233/fe6949dbcca7/fpls-11-00273-g003.jpg

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