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Characterization of Lateral Root Development at the Onset of Storage Root Initiation in 'Beauregard' Sweetpotato Adventitious Roots

机译:“ Beauregard”甘薯不定根贮藏开始时侧根发育的特征。

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摘要

This study characterized lateral root (LR) development attributes during the onset of storage root (SR) initiation stage in 'Beauregard' sweetpotato. SR initiation has been defined as the appearance of cambia around the protoxylem and secondary xylem elements. Our results showed that 20-day-old adventitious roots (ARs) classified as SRs had 53% and 85% greater mean LR count than pencil roots (PRs) and lignified roots (LGs), respectively. SRs had 53% and 78% greater mean LR density relative to PRs and LGs, respectively. SRs had 66% and 130% greater mean total LR length than PRs and LGs, respectively. SRs had lower mean main root (MR)/LR length ratio compared with PRs (-38%) and LGs (-60%). SRs had 70% and 134% greater mean surface area than PRs and LGs, respectively. SRs had lower mean MR/LR surface area ratio compared with PRs (-42%) and LGs (-62%). The plot of the first and second principal components revealed the presence of a gradient between extreme LG and SR clusters, suggesting a developmental transition between LGs and SRs with PRs representing an intermediate developmental stage. Although AR architecture is not the sole determinant of SR formation, our data help provide a basis for integrating AR architecture attributes with other factors that are known to influence SR initiation. Growth substrate moisture variability influenced LR development during the critical SR initiation period. Relative to the control treatments, water deprivation 10 to 20 days after transplanting (DAT) reduced mean LR count, length, and surface area by 49%, 103%, and 94%, respectively. Saturated conditions 10 to 20 DAT reduced mean LR count, length, and surface area by 75%, 81%, and 77%, respectively. These results represent the first evidence for the association between anatomical cues of SR initiation and root architecture and provide corroborating data that soil moisture variability 10 to 20 DAT directly influences SR yield potential through AR architecture modifications that are associated with diminished SR formation. This information can be used to further optimize SR yield by identifying agroclimatic and management variables that are associated with desirable LR development during the critical SR initiation stage.
机译:这项研究的特点是在'Beauregard'甘薯的贮藏根(SR)起始阶段开始时,侧根(LR)发育特征。 SR引发已被定义为在原木质部和次生木质部元件周围出现冈比亚的外观。我们的结果表明,分类为SR的20天大的不定根(AR)的平均LR数分别比铅笔根(PR)和木质化根(LG)高53%和85%。相对于PR和LG,SR的平均LR密度分别高53%和78%。 SR的平均总LR长度分别比PR和LG大66%和130%。与PR(-38%)和LG(-60%)相比,SR具有较低的平均主根(MR)/ LR长度比。 SR的平均表面积分别比PR和LG大70%和134%。与PRs(-42%)和LGs(-62%)相比,SRs的平均MR / LR表面积比率低。第一和第二主成分的图揭示了极端LG和SR簇之间存在梯度,这表明LG和SR之间存在发育过渡,其中PR代表了中间发育阶段。尽管AR体系结构不是SR形成的唯一决定因素,但我们的数据有助于为将AR体系结构属性与已知影响SR启动的其他因素集成提供基础。生长基质水分的变异性在关键的SR起始时期影响了LR的发育。相对于对照治疗,移植后10到20天(DAT)缺水可使平均LR计数,长度和表面积分别减少49%,103%和94%。饱和条件10到20 DAT可使平均LR计数,长度和表面积分别减少75%,81%和77%。这些结果代表了SR引发的解剖学线索与根系结构之间关联的第一个证据,并提供了确凿的数据,即土壤水分变化10到20 DAT通过与减少SR形成相关的AR结构修改直接影响SR产量潜力。通过识别与关键SR起始阶段所需的LR发育相关的农业气候和管理变量,该信息可用于进一步优化SR产量。

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